PerkinElmer
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Epic C18 MS LC Columns - 50 mm, 4.6 mm I.D., 3 μm

Epic C18 MS is specifically engineered for the demands of LC-MS and is a product of high bonding density, allowing maximum stationary phase interaction and providing a platform for flexible mobile phase compositions. It provides superior retention even at high organic levels. Many LC-MS applications rely on high level of organic modifier in the mobile phase, particularly for high performance trace analysis requiring high sensitivity and low-level detection; Epic C18 MS is ideally suited for these mobile phase conditions. This phase is compatible with all LC-MS mobile phases and buffer systems.

Part Number
Inner Diameter
Particle Size
List Price
Your Price
Quantity
512A91-EC18-MS
2.1 mm
1.8 µm
715.00 USD
 
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112191-EC18-MS
2.1 mm
3.0 µm
475.00 USD
 
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112291-EC18-MS
2.1 mm
5.0 µm
445.00 USD
 
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115191-EC18-MS
4.6 mm
3.0 µm
475.00 USD
 
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115291-EC18-MS
4.6 mm
5.0 µm
445.00 USD
 
more
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Overview

The Epic line our latest range of LC columns, based on high density monomerically bonded phases produced through a proprietary bonding process. Epic HPLC and UHPLC columns are compatible with a wide range of organic modifiers and buffers and stable over a wide pH range. All Epic products use an ultra-high purity metal free silica and undergo strict quality control testing. For flexibility, we offer a wide range of column sizes as well being fully scalable from analytical to preparative dimensions.

Features and Benefits:

  • Ultra-high purity silica for improved peak shape, especially for basic compounds
  • Extensive range of stationary phase chemistries with innovative bonding chemistry to enhance method development
  • High density bonding produces columns with better pH stability, increased sample loading and better lot-to-lot reproducibility
  • Extended pH stability across commonly used mobile phase buffers
  • Microbore to preparative dimensions available to allow flexibility and full scalability

Specifications

Inner Diameter 4.6 mm
Length 50.0 mm
Particle Size 3.0 µm
Phase C18 MS